Sulfuric Acid

Sulfuric Acid

SCHEMBL1261850

N.N.O=S(=O)(O)O.[Ni]

nearest known ligand 0.00

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Known targets — ChEMBL curated mechanism

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

The experimentally established mechanism targets of Sulfuric Acid. The predicted profile below is derived independently by chemical similarity — agreement is a validation signal, a miss is honest.

⚠ Novel chemotype — no close known analogue (best Tanimoto < 0.3). Unexplored chemical space relative to ChEMBL.

Similar compounds — the chemically nearest patent molecules

Nearest neighbours by Morgan-fingerprint cosine across the patent-compound collection, with each neighbour's top predicted target and the predicted targets it shares with this molecule.

Compoundsimilaritytop predictedshared targets
Sulfuric Acid SCHEMBL28967263 1.00 CA5A (0.75)
Sulfuric Acid SCHEMBL5498506 1.00 CA5A (0.75)
Sulfuric Acid SCHEMBL317681 1.00
Sulfuric Acid SCHEMBL28251106 1.00
Sulfuric Acid SCHEMBL11231279 1.00 CA5A (0.75)
Sulfuric Acid SCHEMBL28033140 0.94
Sulfuric Acid SCHEMBL28077755 0.94
Sulfuric Acid SCHEMBL27650033 0.94 CA5A (0.67)
Sulfuric Acid SCHEMBL502802 0.94 CA5A (0.67)
Sulfuric Acid SCHEMBL11428254 0.94 CA5A (0.86)

Similarity is cosine over the 2,048-bit Morgan fingerprint (≈ Tanimoto). Identical fingerprints score 1.00.

Patent provenance — the patents this molecule appears in, and who filed them

Claimed or disclosed in 23 patents — showing the first 20. claimed = in the patent's claims; disclosed = body only.

PatentTitleAssigneePublishedPriorityFilingCountryStatus
EP-0794155-B1 Lithium nickel composite oxide, preparation process therefor and application thereof SHARP KK (JP) 2003-06-25 EP claimed
EP-0794155-A1 Lithium nickel composite oxide, preparation process therefor and application thereof SHARP KABUSHIKI KAISHA (JP) 1997-09-10 EP claimed
EP-2251080-B1 A POROUS CATALYTIC BODY THAT DECOMPOSES HYDROCARBONS AND A MANUFACTURING METHOD THEREOF, A METHOD FOR MANUFACTURING MIXED REFORMED GAS THAT COMPRISES HYDROGEN FROM HYDROCARBON, AND A FUEL CELL SYSTEM TODA KOGYO CORP (JP) 2022-05-18 EP disclosed
EP-2476484-B1 POROUS CATALYTIC OBJECT FOR DECOMPOSING HYDROCARBON AND PROCESS FOR PRODUCING SAME, PROCESS FOR PRODUCING HYDROGEN-CONTAINING MIXED REFORMED GAS FROM HYDROCARBON, AND FUEL CELL SYSTEM TODA KOGYO CORP (JP) 2018-11-07 EP disclosed
US-20160167963-A1 HYDROCARBON-DECOMPOSING CATALYST, METHOD FOR DECOMPOSING HYDROCARBONS USING THE CATALYST, PROCESS FOR PRODUCING HYDROGEN USING THE CATALYST, AND POWER GENERATION SYSTEM TODA KOGYO CORPORATION (JP) 2016-06-16 US disclosed
US-8883118-B2 Hydrocarbon-decomposing porous catalyst body and process for producing the same, process for producing hydrogen-containing mixed reformed gas from hydrocarbons, and fuel cell system TODA KOGYO CORPORATION (JP) 2014-11-11 US disclosed
US-20130287679-A1 HYDROCARBON-DECOMPOSING POROUS CATALYST BODY AND PROCESS FOR PRODUCING THE SAME, PROCESS FOR PRODUCING HYDROGEN-CONTAINING MIXED REFORMED GAS FROM HYDROCARBONS, AND FUEL CELL SYSTEM TODA KOGYO CORPORATION (JP) 2013-10-31 US disclosed
US-8486368-B2 Hydrocarbon-decomposing porous catalyst body and process for producing the same, process for producing hydrogen-containing mixed reformed gas from hydrocarbons, and fuel cell system TODA KOGYO CORPORATION (JP) 2013-07-16 US disclosed
US-20130045159-A1 HYDROCARBON-DECOMPOSING POROUS CATALYST BODY AND PROCESS FOR PRODUCING THE SAME, PROCESS FOR PRODUCING HYDROGEN-CONTAINING MIXED REFORMED GAS FROM HYDROCARBONS, AND FUEL CELL SYSTEM TODA KOGYO CORPORATION (JP) 2013-02-21 US disclosed
US-8304367-B2 Hydrocarbon-decomposing porous catalyst body and process for producing the same, process for producing hydrogen-containing mixed reformed gas from hydrocarbons, and fuel cell system TODA KOGYO CORPORATION (JP) 2012-11-06 US disclosed
EP-1759764-B1 Catalyst comprising silicon, magnesium, aluminum and metallic Nickel nanoparticles and its use in a method for decomposing C2 hydrocarbons. TODA KOGYO CORP (JP) 2012-09-26 EP disclosed
EP-2251080-A1 A POROUS CATALYTIC BODY THAT DECOMPOSES HYDROCARBONS AND A MANUFACTURING METHOD THEREOF, A METHOD FOR MANUFACTURING MIXED REFORMED GAS THAT COMPRISES HYDROGEN FROM HYDROCARBON, AND A FUEL CELL SYSTEM Toda Kogyo Corporation (JP) 2010-11-17 EP disclosed
EP-1759764-A1 Catalyst containing alumina, Cerium and more than 10% (expressed as oxide) by weight of either Strontium and/or Barium for treating NOx-containing exhaust gas. Toda Kogyo Corporation (JP) 2007-03-07 EP disclosed
US-20070036713-A1 Hydrocabron-decomposing catalyst, method for decomposing hydrocarbons using the catalyst, process for producing hydrogen using the catalyst, and power generation system TODA KOGYO CORPORATION (JP) 2007-02-15 US disclosed
EP-0794155-B1 Lithium nickel composite oxide, preparation process therefor and application thereof SHARP KK (JP) 2003-06-25 EP disclosed
EP-1169269-A1 EXTRACTION OF METAL SALTS FROM AQUEOUS SOLUTIONS THE UNIVERSITY COURT OF THE UNIVERSITY OF EDINBURGH (GB) 2002-01-09 EP disclosed
WO-2001062989-A1 METHOD FOR THE RECOVERY OF NICKEL AND/OR COBALT ANACONDA NICKEL LTD (AU) 2001-08-30 WO disclosed
WO-2000058225-A1 EXTRACTION OF METAL SALTS FROM AQUEOUS SOLUTIONS THE UNIVERSITY COURT OF THE UNIVERSITY OF EDINBURGH (GB) 2000-10-05 WO disclosed
US-5817436-A POSITIVE ELECTRODE FOR SECONDARY BATTERY SHARP KABUSHIKI KAISHA (JP) 1998-10-06 US disclosed
EP-0794155-A1 Lithium nickel composite oxide, preparation process therefor and application thereof SHARP KABUSHIKI KAISHA (JP) 1997-09-10 EP disclosed